MYB公司
花青素
生物
苹果属植物
栽培
植物
突变体
常绿
园艺
基因表达
基因
生物化学
作者
Ji Tian,Zhen Peng,Jie Zhang,Tingting Song,Huihua Wan,Meiling Zhang,Yuncong Yao
摘要
Summary The ever‐red leaf trait, which is important for breeding ornamental and higher anthocyanin plants, rarely appears in Malus families, but little is known about the regulation of anthocyanin biosynthesis involved in the red leaves. In our study, HPLC analysis showed that the anthocyanin concentration in ever‐red leaves, especially cyanidin, was significantly higher than that in evergreen leaves. The transcript level of Mc MYB 10 was significantly correlated with anthocyanin synthesis between the ‘Royalty’ and evergreen leaf ‘Flame’ cultivars during leaf development. We also found the ever‐red leaf colour cultivar ‘Royalty’ contained the known R 6 : Mc MYB 10 sequence, but was not in the evergreen leaf colour cultivar ‘Flame’, which have been reported in apple fruit. The distinction in promoter region maybe is the main reason why higher expression level of Mc MYB 10 in red foliage crabapple cultivar. Furthermore, Mc MYB 10 promoted anthocyanin biosynthesis in crabapple leaves and callus at low temperatures and during long‐day treatments. Both heterologous expression in tobacco ( Nicotiana tabacum ) and Arabidopsis pap1 mutant, and homologous expression in crabapple and apple suggested that Mc MYB 10 could promote anthocyanins synthesis and enhanced anthocyanin accumulation in plants. Interestingly, electrophoretic mobility shift assays, coupled with yeast one‐hybrid analysis, revealed that Mc MYB 10 positively regulates McF3′H via directly binding to AACCTAAC and TATCCAACC motifs in the promoter. To sum up, our results demonstrated that Mc MYB 10 plays an important role in ever‐red leaf coloration, by positively regulating McF3′H in crabapple. Therefore, our work provides new perspectives for ornamental fruit tree breeding.
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